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Platooning of connected automated vehicles on freeways: a bird’s eye view

机译:在高速公路上连接的自动化车辆排列:鸟瞰图

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A platoon of connected automated vehicles (CAVs) is defined as a group of CAVs that exchange information, so that they can drive in a coordinated way, allowing very small spacings and, still, travelling safely at relatively high speeds. The concept of vehicle platooning is not new. Scientific articles on platooning have been published since the 1970s, and the first large-scale pilot test on vehicle platooning was carried out in the mid 1990s in California. By 1992, the first vehicle platooning experiments were successfully concluded, and the four-vehicle platoon capability was demonstrated for visitors on the I-15 HOV lanes in San Diego in 1994. The main purpose of these early research works was to improve traffic efficiency and reduce vehicle consumption, as well as to develop the existing technology, which represented a strong limitation at the time. Precisely, the development of new technologies and communications in the last decade has given a new impetus to the research on vehicle platooning on freeways, as one of the most promising forms of cooperation among CAVs. These recent studies have extended the analysis beyond traffic efficiency, including safety, sustainability, business productivity, among other objectives.In this context, today, there are many scientific publications on vehicle platooning with different purposes, scopes, scenarios, and based on a wide diversity of vehicles and technologies (i.e. regular or segregated lanes, cars or trucks, vehicles with different SAE levels, etc.). In order to organize and consolidate the existing knowledge on the field, a comprehensive and systematic review must be performed. The present work represents a first approach to this ambitious objective. First, platooning is conceptualized in order to facilitate its analysis and comparison among studies. Second, key publications on platooning are analyzed to determine the most significant impacts that can be expected from its implementation. Finally, some important research gaps and disparate findings on the topic are identified.
机译:连接的自动车辆(CAV)的一排限定为交换信息的一组脉冲,使得它们可以以协调的方式驱动,允许非常小的间距和静止,以相对高的速度安全地行进。车辆排的概念并不新鲜。自20世纪70年代以来,分列的科学文章已发布,并在加利福尼亚州的20世纪90年代中期进行了第一款大规模试验试验。到1992年,成功结束了第一辆车的分列实验,并于1994年在圣地亚哥的I-15 Hov车道上展示了四辆车集水能力。这些早期研究的主要目的是提高交通效率和降低车辆消耗,以及开发现有技术,该技术代表了当时的强烈限制。正是,过去十年的新技术和通讯的发展为高速公路对车辆排放的研究提供了新的推动,作为骑士群岛之间最有希望的合作形式之一。这些最近的研究已经扩展了超越交通效率的分析,包括安全,可持续性,商业生产力,以及其他目标。在此背景下,今天,车辆排在不同目的,范围,情景以及基于广泛的方案和基础上有许多科学出版物。车辆和技术的多样性(即常规或隔离车道,汽车或卡车,具有不同SAE水平等的车辆)。为了组织和巩固现有领域的知识,必须进行全面和系统的审查。目前的工作代表了这种雄心勃勃的目标的第一种方法。首先,排中的概念化,以便于研究的分析和比较。其次,分析了分列的关键出版物以确定可以从其实施中预期的最大影响。最后,确定了关于该主题的一些重要研究差距和不同的调查结果。

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